Experimental Study on Spray Pattern of Pressure-Swirl Nozzle in Reactor Containment

Bian Jiawei, Dalin Zhang, Rulei Sun, Yingwei Wu, W. Tian, G. Su, S. Qiu
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Abstract

Spraying system plays an important role in the safety of PWR. To ensure homogeneous spraying of the containment, the layout of nozzles on the spray header was taken into consideration in design. In this paper, an experimental study was conducted to obtain spray characteristics data, including spray cone angle and 2-D spray flux distribution for the purpose of achieving optimal design of the spraying system. According to the specialty of the spray field involved, a testing loop with four pressure-swirl nozzles was established for the study. Spray cone angles were obtained by photograph method. The volume flux distribution was measured by collecting the spray droplet along the cross-section diameters. Based on the experimental data, typical spray flux distributions were obtained. The flux distribution results were used to build 3-D coverage models. Then these models were used to calculate the overall spray coverage in the containment. The present work introduces the experimental study of spray behavior of a typical pressure-swirl nozzle in containment and the method to evaluate spray coverage through building 3-D spray flux distribution models. The work is expected to be helpful for the optimization design of spraying systems.
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反应堆安全壳内压力旋流喷嘴喷雾模式的实验研究
喷淋系统在压水堆安全运行中起着重要作用。为了保证容器的均匀喷涂,在设计时考虑了喷头的布置。本文通过实验研究,获取喷雾特性数据,包括喷雾锥角和二维喷雾通量分布,以实现喷雾系统的优化设计。根据所涉及的喷雾场的特点,建立了一个由四个压力旋流喷嘴组成的测试回路进行研究。用照相法获得喷雾锥角。通过收集沿截面直径方向的喷雾液滴来测量体积通量分布。根据实验数据,得到了典型的喷雾通量分布。利用通量分布结果建立三维覆盖模型。然后用这些模型计算了安全壳内喷雾的总覆盖范围。本文介绍了一种典型的压力旋流喷嘴在容器内的喷雾行为的实验研究,以及通过建立三维喷雾通量分布模型来评估喷雾覆盖范围的方法。研究结果对喷雾系统的优化设计具有一定的指导意义。
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